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Plat de quartz fondu
Created with Pixso. Custom Quartz Thermal Insulation Plate Holder for Photovoltaic Furnace Systems

Custom Quartz Thermal Insulation Plate Holder for Photovoltaic Furnace Systems

Nom De Marque: ZMSH
MOQ: 50
Délai De Livraison: 2 à 4 semaines
Conditions De Paiement: T/T
Informations détaillées
Lieu d'origine:
Shanghai, Chine
Matériel:
Quartz fondu de haute pureté / Quartz fondu opaque
Taille de référence:
245 × 93 × 38 mm
Structure:
Support multi-fentes de précision
Apparence:
Blanc laiteux, opaque, givré ou personnalisé
Apparence:
Blanc laiteux, opaque, givré ou personnalisé
Quantité de fente:
Personnalisé
Largeur de l'emplacement:
Personnalisé en fonction de l'épaisseur de la plaque
Profondeur de fente:
Personnalisé
Description de produit

Custom Quartz Thermal Insulation Plate Holder for Photovoltaic Furnace Systems 0

Custom Quartz Thermal Insulation Plate Holder for Photovoltaic Furnace Systems

The Quartz Thermal Insulation Plate Holder is a specialized furnace component used to securely position multiple quartz insulation plates or thermal barrier plates around the opening of a process tube.

Manufactured from high-purity fused quartz, the holder offers low thermal expansion, good thermal-shock resistance, high-temperature compatibility, and low contamination potential. Its precision-machined multi-slot structure maintains consistent spacing between individual insulation plates, helping create a stable thermal barrier assembly at the furnace opening.

When installed with matching quartz insulation plates, the complete assembly can help reduce heat transfer around the tube opening, improve thermal-zone stability, and limit excessive heat exposure to nearby furnace components.

This custom quartz holder is suitable for photovoltaic diffusion furnaces, semiconductor oxidation and diffusion systems, LPCVD equipment, laboratory tube furnaces, and other high-temperature processing systems.

Key Features

High-Purity Fused Quartz

Manufactured from high-purity fused silica to help minimize contamination in photovoltaic and semiconductor thermal-processing environments.

Precision Multi-Slot Structure

The slot width, depth, spacing, and quantity can be accurately machined to match the thickness and arrangement of the insulation plates.

Low Thermal Expansion

Fused quartz has a very low coefficient of thermal expansion, helping the holder maintain dimensional stability during repeated heating and cooling cycles.

Thermal-Shock Resistance

The quartz structure is suitable for applications involving temperature changes. Actual service life depends on heating rate, cooling rate, mechanical loading, and installation conditions.

Stable Plate Positioning

The holder supports multiple insulation plates at controlled intervals, reducing unwanted movement, tilting, and direct contact between adjacent plates.

Custom Furnace Compatibility

Overall dimensions, slot layout, mounting features, edge geometry, and surface condition can be manufactured according to the existing furnace assembly.

Product Specifications

Parameter Available Specification
Product name Quartz Thermal Insulation Plate Holder
Alternative names Quartz Insulation Plate Support, Quartz Slot Holder, Quartz Support Frame, Quartz Thermal Barrier Holder
Material High-Purity Fused Quartz / Opaque Fused Quartz
Reference size 245 × 93 × 38 mm
Structure Precision Multi-Slot Holder
Appearance Milky White, Opaque, Frosted, or Customized
Slot quantity Customized
Slot width Customized according to plate thickness
Slot depth Customized
Slot spacing Customized according to thermal design
Surface finish Precision Ground, Frosted, or Partially Polished
Edge treatment Ground, Chamfered, or Rounded
SiO₂ purity Up to ≥99.99%, depending on quartz grade
Thermal expansion coefficient Approximately 5.5 × 10⁻⁷/K
Softening point Approximately 1,680°C, depending on material grade
Recommended service temperature Confirmed according to load, geometry, quartz grade, and furnace conditions
Manufacturing methods Cutting, CNC Machining, Slotting, Grinding, Drilling, and Cleaning
Dimensional tolerances Customized according to drawing
Custom manufacturing OEM, ODM, Drawing-Based, and Sample-Based Production

The listed size is a reference specification. Material grade, working temperature, tolerances, and structural dimensions should be confirmed according to the actual furnace design.

How the Holder Works

Custom Quartz Thermal Insulation Plate Holder for Photovoltaic Furnace Systems 1

The holder is installed at or near the opening of a furnace tube. Multiple quartz insulation plates are inserted into the machined slots to form a layered thermal barrier.

The controlled spacing between the plates helps:

  • Maintain a stable insulation-plate arrangement
  • Reduce direct heat transfer near the tube opening
  • Limit unwanted plate movement
  • Improve repeatability during installation and maintenance
  • Protect nearby seals, frames, and other furnace components
  • Support a more stable thermal environment around the furnace entrance

Thermal performance depends on the number of plates, spacing, plate thickness, material, furnace temperature, airflow, and installation position.

Product Advantages

  • High-purity fused quartz construction
  • Low risk of metallic contamination
  • Precision-machined slot geometry
  • Consistent plate spacing
  • Low coefficient of thermal expansion
  • Good resistance to thermal cycling
  • Suitable for high-temperature furnace assemblies
  • Stable positioning of multiple quartz plates
  • Compatible with clean manufacturing environments
  • Replaceable and maintainable component design
  • Custom dimensions and mounting structures available
  • Matching quartz insulation plates can be supplied

Custom Quartz Thermal Insulation Plate Holder for Photovoltaic Furnace Systems 2

Typical Applications

  • Photovoltaic diffusion furnaces
  • Solar cell manufacturing equipment
  • Furnace tube entrance and exit assemblies
  • Quartz insulation plate assemblies
  • Semiconductor diffusion furnaces
  • Semiconductor oxidation furnaces
  • LPCVD and thermal-processing systems
  • High-temperature quartz assemblies
  • Laboratory tube furnaces
  • Industrial heat-treatment equipment
  • Customized furnace thermal-barrier systems

Custom Design Options

The quartz insulation plate holder can be customized with:

  • Different overall lengths, widths, and heights
  • Customized slot quantities
  • Different slot widths and depths
  • Uniform or variable slot spacing
  • Customized base thickness
  • Positioning holes or mounting features
  • Stepped or recessed structures
  • Chamfered or rounded edges
  • Ground, frosted, or locally polished surfaces
  • Special profiles for furnace installation
  • Matching quartz insulation plates
  • Complete holder-and-plate assemblies

For existing furnace systems, manufacturing can be based on a technical drawing, CAD model, physical sample, or measured installation dimensions.

Manufacturing Process

A typical production process includes:

  1. Quartz material selection
  2. Blank cutting and dimensional preparation
  3. CNC profile machining
  4. Precision slot machining
  5. Surface grinding
  6. Edge chamfering and finishing
  7. Stress-relief treatment when required
  8. Cleaning
  9. Dimensional inspection
  10. Visual inspection
  11. Protective packaging

The specific manufacturing route is selected according to the material type, slot geometry, tolerance requirements, and order quantity.

Quality Inspection

Each quartz plate holder can be inspected for:

  • Overall length, width, and height
  • Slot quantity
  • Slot width and depth
  • Slot-to-slot spacing
  • Slot-position accuracy
  • Base flatness
  • Parallelism and perpendicularity
  • Surface condition
  • Edge integrity
  • Chips, cracks, and machining defects
  • Cleanliness
  • Fit with matching insulation plates

Inspection reports and customized acceptance standards can be discussed for batch orders.

Information Required for Quotation

Please provide the following information:

  1. Overall dimensions
  2. Slot quantity
  3. Slot width and depth
  4. Slot-to-slot spacing
  5. Quartz insulation plate dimensions
  6. Base and support thickness
  7. Mounting or positioning requirements
  8. Surface-finish requirements
  9. Dimensional tolerances
  10. Maximum operating temperature
  11. Heating and cooling conditions
  12. Installation orientation and mechanical load
  13. Required quantity
  14. Technical drawing, 3D model, or physical sample

Providing the insulation plate dimensions together with the holder drawing helps ensure proper assembly clearance.

Packaging

Each quartz holder is individually protected to reduce the risk of chipping, scratching, impact, and breakage during transportation.

Available packaging methods include:

  • Protective film or clean wrapping
  • Custom-cut foam inserts
  • Individual inner boxes
  • Reinforced export cartons
  • Wooden cases for larger or batch orders

FAQ

1. What is the function of a quartz thermal insulation plate holder?

It supports and positions multiple quartz insulation plates near a furnace tube opening. The complete plate-and-holder assembly forms a layered thermal barrier and helps protect nearby furnace components from excessive heat exposure.

2. Can the slot quantity and spacing be customized?

Yes. Slot quantity, width, depth, spacing, and position can be customized according to the insulation plate dimensions and furnace design.

3. Can you manufacture the holder according to a physical sample?

Yes. Sample-based manufacturing is available. However, a dimensioned drawing is recommended when precise slot spacing or installation tolerances are required.

4. What information is needed to determine the slot width?

We need the insulation plate thickness, required assembly clearance, operating temperature, installation direction, and dimensional tolerance.

5. Is the reference size of 245 × 93 × 38 mm fixed?

No. This is only a reference size for the displayed product. Overall dimensions and slot geometry can be customized.

6. Can matching quartz insulation plates be supplied?

Yes. We can manufacture the holder and matching quartz insulation plates as individual components or as a complete assembly.

7. Can the product be used continuously at 1,100°C?

Fused quartz may be suitable for this temperature range, but long-term performance depends on the quartz grade, component geometry, mechanical load, mounting method, thermal cycling, and furnace atmosphere. The operating conditions should be reviewed before confirming the design.

8. Can prototypes be produced before batch manufacturing?

Yes. Prototype, small-batch, and volume production services are available.